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细菌I型ATP结合盒式转运体HisQMP2在催化循环不同步骤的构象变化。

Conformational changes of the bacterial type I ATP-binding cassette importer HisQMP2 at distinct steps of the catalytic cycle.

作者信息

Heuveling Johanna, Frochaux Violette, Ziomkowska Joanna, Wawrzinek Robert, Wessig Pablo, Herrmann Andreas, Schneider Erwin

机构信息

Institut für Biologie/Bakterienphysiologie, Humboldt Universität zu Berlin, Chausseestr. 117, D-10115 Berlin, Germany.

出版信息

Biochim Biophys Acta. 2014 Jan;1838(1 Pt B):106-16. doi: 10.1016/j.bbamem.2013.08.024. Epub 2013 Sep 7.

Abstract

Prokaryotic solute binding protein-dependent ATP-binding cassette import systems are divided into type I and type II and mechanistic differences in the transport process going along with this classification are under intensive investigation. Little is known about the conformational dynamics during the catalytic cycle especially concerning the transmembrane domains. The type I transporter for positively charged amino acids from Salmonella enterica serovar Typhimurium (LAO-HisQMP2) was studied by limited proteolysis in detergent solution in the absence and presence of co-factors including ATP, ADP, LAO/arginine, and Mg(2+) ions. Stable peptide fragments could be obtained and differentially susceptible cleavage sites were determined by mass spectrometry as Lys-258 in the nucleotide-binding subunit, HisP, and Arg-217/Arg-218 in the transmembrane subunit, HisQ. In contrast, transmembrane subunit HisM was gradually degraded but no stable fragment could be detected. HisP and HisQ were equally resistant under pre- and post-hydrolysis conditions in the presence of arginine-loaded solute-binding protein LAO and ATP/ADP. Some protection was also observed with LAO/arginine alone, thus reflecting binding to the transporter in the apo-state and transmembrane signaling. Comparable digestion patterns were obtained with the transporter reconstituted into proteoliposomes and nanodiscs. Fluorescence lifetime spectroscopy confirmed the change of HisQ(R218) to a more apolar microenvironment upon ATP binding and hydrolysis. Limited proteolysis was subsequently used as a tool to study the consequences of mutations on the transport cycle. Together, our data suggest similar conformational changes during the transport cycle as described for the maltose ABC transporter of Escherichia coli, despite distinct structural differences between both systems.

摘要

原核生物溶质结合蛋白依赖性ATP结合盒式导入系统分为I型和II型,与此分类相关的转运过程中的机制差异正在深入研究中。关于催化循环期间的构象动力学,尤其是跨膜结构域,人们了解甚少。通过在去污剂溶液中进行有限蛋白酶解,研究了鼠伤寒沙门氏菌中带正电荷氨基酸的I型转运蛋白(LAO-HisQMP2),实验条件为有无包括ATP、ADP、LAO/精氨酸和Mg(2+)离子在内的辅助因子。可以获得稳定的肽片段,并通过质谱法确定差异敏感的切割位点,分别为核苷酸结合亚基HisP中的Lys-258以及跨膜亚基HisQ中的Arg-217/Arg-218。相比之下,跨膜亚基HisM逐渐降解,但未检测到稳定片段。在存在负载精氨酸的溶质结合蛋白LAO和ATP/ADP的情况下,HisP和HisQ在水解前后条件下具有同等抗性。单独使用LAO/精氨酸时也观察到了一些保护作用,从而反映了其在脱辅基状态下与转运蛋白的结合以及跨膜信号传导。将转运蛋白重构到蛋白脂质体和纳米盘中时,获得了类似的消化模式。荧光寿命光谱证实,ATP结合和水解后,HisQ(R218)转变为更具疏水性的微环境。随后,有限蛋白酶解被用作研究突变对转运循环影响的工具。总之,我们的数据表明,尽管两个系统在结构上存在明显差异,但在转运循环期间的构象变化与大肠杆菌麦芽糖ABC转运蛋白所描述的相似。

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